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首页> 外文期刊>Cell death & disease. >Tolerance to sustained activation of the cAMP/Creb pathway activity in osteoblastic cells is enabled by loss of p53
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Tolerance to sustained activation of the cAMP/Creb pathway activity in osteoblastic cells is enabled by loss of p53

机译:通过P53的损失使得骨细胞细胞中难率激活持续活化的持续激活持续活化的耐受性

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The loss of p53 function is a central event in the genesis of osteosarcoma (OS). How mutation of p53 enables OS development from osteoblastic lineage cells is poorly understood. We and others have reported a key role for elevated and persistent activation of the cAMP/PKA/Creb1 pathway in maintenance of OS. In view of the osteoblast lineage being the cell of origin of OS, we sought to determine how these pathways interact within the context of the normal osteoblast. Normal osteoblasts (p53 WT) rapidly underwent apoptosis in response to acute elevation of cAMP levels or activity, whereas p53-deficient osteoblasts tolerated this aberrant cAMP/Creb level and activity. Using the p53 activating small-molecule Nutlin-3a and cAMP/Creb1 activator forskolin, we addressed the question of how p53 responds to the activation of cAMP. We observed that p53 acts dominantly to protect cells from excessive cAMP accumulation. We identify a Creb1-Cbp complex that functions together with and interacts with p53. Finally, translating these results we find that a selective small-molecule inhibitor of the Creb1-Cbp interaction demonstrates selective toxicity to OS cells where this pathway is constitutively active. This highlights the cAMP/Creb axis as a potentially actionable therapeutic vulnerability in p53-deficient tumors such as OS. These results define a mechanism through which p53 protects normal osteoblasts from excessive or abnormal cAMP accumulation, which becomes fundamentally compromised in OS.
机译:P53功能的损失是骨肉瘤的成因中的核心事件(OS)。 P53的突变是如何从骨细胞谱系细胞中启用OS的开发知之甚少。我们和其他人报告了在维护OS维护中营地/ PKA / Creb1途径的升高和持续激活的关键作用。鉴于Osteooooblast谱系是OS的起源,我们试图确定这些途径如何在正常成骨细胞的背景下相互作用。正常的成骨细胞(P53 WT)响应CAMP水平或活性的急性升高而迅速接受细胞凋亡,而P53缺陷型成骨细胞耐受这种异常阵营/ CREB水平和活性。使用P53活化小分子肉蔻-3A和CAMP / CREB1活化剂Forskolin,我们解决了P53如何应对营地激活的问题。我们观察到P53占主导地位,以保护细胞免受过度营地积累。我们识别CREB1-CBP复合体,可以与p53一起函数并与p53相互作用。最后,翻译这些结果我们发现CREB1-CBP相互作用的选择性小分子抑制剂证明了对OS细胞的选择性毒性,其中该途径是组成型活性的。这将突出显示CAMP / CREB轴作为P53缺陷型肿瘤等潜在可操作的治疗漏洞,例如OS。这些结果定义了P53通过该机制保护来自过量或异常的阵营积累的正常成骨细胞,这在OS中变得根本受到影响。

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